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Leaf Senescence of Soybean at Reproductive Stage is Associated with Induction of Autophagy-related Genes, GmATG8c, GmATG8i and GmATG4

机译:大豆生殖阶段的叶片衰老与自噬相关基因GmATG8c,GmATG8i和GmATG4的诱导相关

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Autophagy appears to function in bulk protein degradation and N remobilization in senescence. Depodding of soybean suppresses N remobilization from leaves, leading to “green stem syndrome”. Expression of autophagy-related genes (ATGs) and N contents of the leaves and stem was analyzed in soybean plants from none (control), half (50% depodding) and all (100% depodding) of flowers and pods were removed at the reproductive 5 stage. Total N content and SPAD in leaves of the plant after 100% depodding were retained at a constant level and those after 50% depodding gradually decreased from 4 to 5 wk after depodding, while those in the control plants rapidly decreased during this period. Expression of GmATG8c and GmATG8i in leaves peaked at 4 wk in control while the gene expression increased gradually after 50% and 100% depodding. The transient up-regulation of ATGs and the decline of leaf N content and SPAD occurred simultaneously. These results indicated that ATGs are involved in leaf senescence and N remobilization from leaf to pod.
机译:自噬似乎在衰老过程中对大量蛋白质的降解和氮的重新固定起作用。大豆去污抑制了叶片中氮的迁移,导致“绿茎综合症”。在大豆植株中,从无(对照),一半(50%去荚)和全部(100%去荚)的花和豆荚中去除了自噬相关基因(ATGs)的表达和叶片和茎中的N含量。生殖5阶段。脱毛后植物叶片中的总氮含量和SPAD保持恒定,而脱毛后50%植物​​叶片中的总氮含量和SPAD从脱毛后的4 wk逐渐降低,而对照植物在此期间迅速降低。在对照中,叶片的GmATG8c和GmATG8i的表达在4 wk达到峰值,而基因表达在50%和100%去除后逐渐增加。 ATG的瞬时上调与叶片N含量和SPAD的下降同时发生。这些结果表明,ATGs参与了叶片的衰老和氮从叶片到豆荚的重新固定。

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