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Table 2 Enriched biological process potentially involved in high temperature-induced floral abortion in litchi

From: Genome-wide transcriptome analysis reveals the molecular mechanism of high temperature-induced floral abortion in Litchi chinensis

Term

Term description

No. of genes

Frequence

P-value

GO:0010252

Auxin homeostasis

7

0.7%

0.00189

GO:0009409

Response to cold

37

3.9%

0.0051

GO:0048574

Long-day photoperiodism, flowering

6

0.6%

0.006

GO:0016131

Brassinosteroid metabolic process

9

1.0%

0.0065

GO:0009862

Systemic acquired resistance, salicylic acid mediated signaling pathway

6

0.2%

0.0074

GO:0009751

Phytosteroid biosynthetic process

8

0.9%

0.0095

GO:0009266

Response to temperature stimulus

52

5.5%

0.0104

GO:0006694

Steroid biosynthetic process

10

1.1%

0.013

GO:0010080

Regulation of floral meristem growth

2

0.2%

0.0136

GO:0010081

Regulation of inflorescence meristem growth

2

0.2%

0.0136

GO:0080142

Regulation of salicylic acid biosynthetic process

3

0.3%

0.0141

GO:0009725

Response to hormone

125

13.3%

0.0151

GO:0009808

Lignin metabolic process

9

1.0%

0.017

GO:0009753

Response to jasmonic acid

26

2.8%

0.0223

GO:0010451

Floral meristem growth

2

0.2%

0.0259

GO:0016132

Brassinosteroid biosynthetic process

7

0.7%

0.0264

GO:0010268

Brassinosteroid homeostasis

7

0.7%

0.0264

GO:0009697

Salicylic acid biosynthetic process

3

0.3%

0.0272

GO:0009737

Response to abscisic acid

59

6.3%

0.0272

GO:0009631

Cold acclimation

6

0.6%

0.0307

GO:0009735

Response to cytokinin

22

2.3%

0.0424