[1]

Yu F, Fu A, Aluru M, Park S, Xu Y, et al. 2007. Variegation mutants and mechanisms of chloroplast biogenesis. Plant, Cell & Environment 30:350−65

doi: 10.1111/j.1365-3040.2006.01630.x
[2]

Sakamoto W, Tamura T, Hanba-Tomita Y, Sodmergen, Murata M. 2002. The VAR1 locus of Arabidopsis encodes a chloroplastic FtsH and is responsible for leaf variegation in the mutant alleles. Genes to Cells 7:769−80

doi: 10.1046/j.1365-2443.2002.00558.x
[3]

Azarin K, Usatov A, Makarenko M, Kozel N, Kovalevich A, et al. 2020. A point mutation in the photosystem I P700 chlorophyll a apoprotein A1 gene confers variegation in Helianthus annuus L. Plant Molecular Biology 103:373−89

doi: 10.1007/s11103-020-00997-x
[4]

Gao J, Liang D, Xu Q, Yang F, Zhu G. 2020. Involvement of CsERF2 in leaf variegation of Cymbidium sinense 'Dharma'. Planta 252:29

doi: 10.1007/s00425-020-03426-x
[5]

Zhao X, Hu K, Yan M, Yi B, Wen J, et al. 2020. Disruption of carotene biosynthesis leads to abnormal plastids and variegated leaves in Brassica napus. Molecular Genetics and Genomics 295:981−99

doi: 10.1007/s00438-020-01674-w
[6]

Ma Q, Li H, Zou Z, Arkorful E, Lv Q, et al. 2018. Transcriptomic analyses identify albino-associated genes of a novel albino tea germplasm 'Huabai 1'. Horticulture Research 5:54

doi: 10.1038/s41438-018-0053-y
[7]

Chen Z, Lin S, Chen T, Han M, Yang T, et al. 2022. Haem Oxygenase 1 is a potential target for creating etiolated/albino tea plants (Camellia sinensis) with high theanine accumulation. Horticulture Research 10(2):uhac269

doi: 10.1093/hr/uhac269
[8]

Liu Z, Dai Y, Mao L, Yang S, Yang B, et al. 2022. Integrated metabolome and transcriptome analysis revealed carotenoid metabolism difference in pepper (Capsicum annuum L.) yellowing mutants under different light quality. Vegetable Research 2:21

doi: 10.48130/VR-2022-0021
[9]

Miao H, Zhang S, Wang M, Wang Y, Weng Y, et al. 2016. Fine mapping of virescent leaf gene v-1 in cucumber (Cucumis sativus L.). International Journal of Molecular Sciences 17:1602

doi: 10.3390/ijms17101602
[10]

Song M, Wei Q, Wang J, Fu W, Qin X, et al. 2018. Fine mapping of CsVYL, conferring virescent leaf through the regulation of chloroplast development in cucumber. Frontiers in Plant Science 9:432

doi: 10.3389/fpls.2018.00432
[11]

Ding Y, Yang W, Su C, Ma H, Pan Y, et al. 2019. Tandem 13-lipoxygenase genes in a cluster confers yellow-green leaf in cucumber. International Journal of Molecular Sciences 20:3102

doi: 10.3390/ijms20123102
[12]

Hu L, Zhang H, Xie C, Wang J, Zhang J, et al. 2020. A mutation in CsHD encoding a histidine and aspartic acid domain-containing protein leads to yellow young leaf-1 (yyl-1) in cucumber (Cucumis sativus L.). Plant Science 293:110407

doi: 10.1016/j.plantsci.2020.110407
[13]

Xiong L, Du H, Zhang K, Lv D, He H, et al. 2021. A mutation in CsYL2.1 encoding a plastid isoform of triose phosphate isomerase leads to Yellow Leaf 2.1 (yl2.1) in cucumber (Cucumis Sativus L.). International Journal of Molecular Sciences 22:322

doi: 10.3390/ijms22010322
[14]

Schmid LM, Ohler L, Möhlmann T, Brachmann A, Muiño JM, et al. 2019. PUMPKIN, the sole plastid UMP kinase, associates with group II introns and alters their metabolism. Plant Physiology 179:248−64

doi: 10.1104/pp.18.00687
[15]

Zhang Q, Du H, Lv D, Xiao T, Pan J, et al. 2018. Efficient transposition of the retrotransposon Tnt1 in cucumber (Cucumis sativus L.). Horticultural Plant Journal 4:111−16

doi: 10.1016/j.hpj.2018.03.011
[16]

Wen H, Pan J, Chen Y, Chen G, Du H, et al. 2021. TERMINAL FLOWER 1 and TERMINAL FLOWER 1d respond to temperature and photoperiod signals to inhibit determinate growth in cucumber. Plant, Cell & Environment 44:2580−92

doi: 10.1111/pce.14075
[17]

Huang S, Li R, Zhang Z, Li L, Gu X, et al. 2009. The genome of the cucumber, Cucumis sativus L. Nature Genetics 41:1275−81

doi: 10.1038/ng.475
[18]

Pan J, Wen H, Chen G, Lin WH, Du H et al. 2021. A positive feedback loop mediated by CsERF31 initiates female cucumber flower development. Plant Physiology 186:1088−100

doi: 10.1093/plphys/kiab141
[19]

Yu Y, Pan J, Wen H, Chen Y, Cai R, et al. 2022. Identification and Analysis of the Yellow Leaf Mutant Gene yl-5 in Cucumber. Molecular Plant Breeding 20(12):3829−36

doi: 10.13271/j.mpb.020.003829
[20]

Ke X, Shen J, Niu Y, Zhao H, Guo Y, et al. 2023. Cucumber NUCLEAR FACTOR-YC2/-YC9 target translocon component CsTIC21 in chloroplast photomorphogenesis. Plant Physiology 192:2822−37

doi: 10.1093/plphys/kiad296